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Bioprocess and bioreactor: next generation technology for production of potential plant-based antidiabetic and antioxidant molecules.

机译:生物过程和生物反应器:用于生产潜在的植物性抗糖尿病和抗氧化剂分子的下一代技术。

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摘要

Globally, diabetes and obesity are two of the most common metabolic diseases of the 21(st) century. Increasingly, not only adults but children and adolescents are being affected. New approaches are needed to prevent and treat these disorders and to reduce the impact of associated disease-related complications. Industrial-scale production using plant-root cultures can produce quantities and quality of inexpensive bioactive small molecules with nutraceutical and pharmaceutical properties. Using this approach, and targeting these diseases, a next generation approach to tackling this emerging global health crisis may be developed. Adventitious roots cultured in bioreactors under controlled and reproducible conditions have been shown effective for production of natural products. The liquid-phase airlift bioreactor in particular has been used successfully for culturing roots on an industrial-scale and thus may provide an economical production platform for expressing promising plant-based antidiabetic and antioxidant molecules. This review focuses on a next-generation, scalable, bioprocessing approach for adventitious and hairy root cultures that are a pesticide-free, seasonally-independent, plant-based source of three molecules that have shown promise for the therapeutic management of diabetes and obesity: corosolic acid, resveratrol and ginsenosides.
机译:在全球范围内,糖尿病和肥胖是21世纪最常见的两种代谢性疾病。不仅是成年人,而且儿童和青少年都受到越来越多的影响。需要新的方法来预防和治疗这些疾病并减少相关疾病相关并发症的影响。使用植物根系培养物的工业规模生产可以生产出数量和质量低廉的具有保健和药物特性的生物活性小分子。使用这种方法并针对这些疾病,可以开发出应对这种新出现的全球健康危机的下一代方法。在生物反应器中在受控和可复制的条件下培养的不定根已显示对天然产物的生产有效。特别地,液相气提生物反应器已成功用于工业规模的根培养,因此可为表达有前途的基于植物的抗糖尿病和抗氧化剂分子提供经济的生产平台。这篇综述主要针对不定根和毛状根培养物的下一代,可扩展的生物加工方法,该方法是无农药,不依赖季节的植物性三种分子的植物来源,已显示出对糖尿病和肥胖症的治疗管理的希望:椰油酸,白藜芦醇和人参皂甙。

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